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利用 LAESI 质谱成像技术对本土和扩张分布植物物种的根系代谢组进行区分。

LAESI mass spectrometry imaging as a tool to differentiate the root metabolome of native and range-expanding plant species.

机构信息

Netherlands Institute of Ecology (NIOO-KNAW), Droevendaalsesteeg 10, 6708 PB, Wageningen, The Netherlands.

Laboratory of Nematology, Wageningen University and Research Centre, PO Box 8123, 6700 ES, Wageningen, The Netherlands.

出版信息

Planta. 2018 Dec;248(6):1515-1523. doi: 10.1007/s00425-018-2989-4. Epub 2018 Aug 23.

Abstract

LAESI-MSI, an innovative high-throughput technique holds a unique potential for untargeted detection, profiling and spatial localization of metabolites from intact plant samples without need for extraction or extensive sample preparation. Our understanding of chemical diversity in biological samples has greatly improved through recent advances in mass spectrometry (MS). MS-based-imaging (MSI) techniques have further enhanced this by providing spatial information on the distribution of metabolites and their relative abundance. This study aims to employ laser-ablation electrospray ionization (LAESI) MSI as a tool to profile and compare the root metabolome of two pairs of native and range-expanding plant species. It has been proposed that successful range-expanding plant species, like introduced exotic invaders, have a novel, or a more diverse secondary chemistry. Although some tests have been made using aboveground plant materials, tests using root materials are rare. We tested the hypothesis that range-expanding plants possess more diverse root chemistries than native plant species. To examine the root chemistry of the selected plant species, LAESI-MSI was performed in positive ion mode and data were acquired in a mass range of m/z 50-1200 with a spatial resolution of 100 µm. The acquired data were analyzed using in-house scripts, and differences in the spatial profiles were studied for discriminatory mass features. The results revealed clear differences in the metabolite profiles amongst and within both pairs of congeneric plant species, in the form of distinct metabolic fingerprints. The use of ambient conditions and the fact that no sample preparation was required, established LAESI-MSI as an ideal technique for untargeted metabolomics and for direct correlation of the acquired data to the underlying metabolomic complexity present in intact plant samples.

摘要

LAESI-MSI 是一种创新的高通量技术,具有独特的潜力,可以在无需提取或广泛样品制备的情况下,对完整植物样品中的代谢物进行非靶向检测、分析和空间定位。通过近年来质谱(MS)的发展,我们对生物样品中的化学多样性有了更深入的了解。基于 MS 的成像(MSI)技术通过提供代谢物分布及其相对丰度的空间信息,进一步增强了这一点。本研究旨在利用激光烧蚀电喷雾电离(LAESI)MSI 作为一种工具,对两对原生和扩展范围的植物物种的根代谢组进行分析和比较。有人提出,成功扩展范围的植物物种,如引入的外来入侵物种,具有新颖的或更多样化的次生化学物质。虽然已经对地上植物材料进行了一些测试,但使用根材料的测试很少。我们测试了这样一个假设,即扩展范围的植物拥有比本地植物物种更多样化的根化学物质。为了研究所选植物物种的根化学物质,在正离子模式下进行 LAESI-MSI,并在 m/z 50-1200 的质量范围内以 100 µm 的空间分辨率采集数据。使用内部脚本分析采集到的数据,并研究空间分布中差异明显的代谢物特征。结果表明,在两对同属植物物种中,无论是在种间还是种内,代谢物图谱都存在明显差异,表现为独特的代谢指纹。使用环境条件且无需样品制备,这使得 LAESI-MSI 成为一种理想的非靶向代谢组学技术,可直接将获得的数据与完整植物样品中存在的潜在代谢复杂性相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4222/6244666/1fdc4ea961c1/425_2018_2989_Fig1_HTML.jpg

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